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一种用于交直流混合系统最优潮流研究的高效通用交直流支路模型
An Efficient Universal AC/DC Branch Model for Optimal Power Flow Studies in Hybrid AC/DC Systems
| 作者 | Mahmoud Shahbazi |
| 期刊 | IEEE Transactions on Power Systems |
| 出版日期 | 2024年12月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★ 4.0 / 5.0 |
| 关键词 | SADRA模型 交直流混合系统 最优潮流研究 电压和功率控制 性能验证 |
语言:
中文摘要
本文提出了一种新的高效通用交直流支路模型SADRA,适用于含电压与功率控制的交直流混合系统最优潮流研究。SADRA可统一建模交流、直流及交直流元件,包括电压源换流器及其接口设备(如点对点与多端高压直流)、移相变压器和调压变压器等。该模型直接耦合交流与直流电网,采用常规交流方程进行建模,并能有效实现VSC控制功能。由于结构简洁紧凑,SADRA具有快速且鲁棒的计算性能。通过对1359节点和3125节点大型交直流系统进行仿真,结果表明SADRA在通用性、控制实现能力及计算速度方面均优于现有方法,最快可比含控制功能的模型提速六倍以上。
English Abstract
This paper introduces a new efficient universal AC/DC branch model, SADRA, for modelling hybrid AC/DC systems in optimal power flow studies, with provisions of voltage and power controls. SADRA offers a versatile approach for modelling diverse AC, DC, and AC/DC elements including VSCs and VSC-interfaced elements (including point-to-point and multi terminal HVDC), phase-shifter and tap-changing transformers, and in general, hybrid AC/DC systems, all within a universal model. SADRA directly links AC and DC grids, and therefore it is able to use conventional AC equations for modelling. Moreover, it is capable of implementing VSC control actions as well. Due to its compact and simple structure, SADRA is fast and robust. To demonstrate SADRA’s performance, versatility, and speed, two large AC/DC systems with 1359 bus and 3125 buses are studied and the results are compared with the existing methods in the literature. It is shown that SADRA is a truly universal model, and also successfully implements voltage and power control actions. Additionally, it is demonstrated that in addition to its advantages, SADRA is as fast or faster than the comparable methods in recent literature, and is up to more than six times faster compared to models with control actions provisions.
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SunView 深度解读
该通用交直流支路模型SADRA对阳光电源储能系统和光伏并网产品具有重要应用价值。在PowerTitan大型储能系统中,SADRA可优化VSC换流器的功率调度和电压控制策略,实现交直流混合微网的快速潮流计算,提升系统经济性。对于ST系列储能变流器,该模型可用于多端直流互联场景的控制参数优化,特别是在含多台PCS并联的大型储能电站中,能够快速求解最优功率分配方案。在SG光伏逆变器的1500V高压直流系统设计中,SADRA的统一建模方法可简化交直流耦合接口的控制算法,提升构网型GFM控制的稳定性。其六倍以上的计算提速优势,可显著增强iSolarCloud平台的实时优化调度能力。